Download A New Era Of Nuclear Structure Physics: Proceedings Of The by Yasuyuki Suzuki, Susumu Ohya, Masayuki Matsuo, Takashi PDF

By Yasuyuki Suzuki, Susumu Ohya, Masayuki Matsuo, Takashi Ohtsubo

This publication is a suite of invited talks, oral contributions and poster contributions dedicated to advances in nuclear physics. It covers a large variety of themes on nuclear physics, together with nuclear strength, hypernuclei, nuclear constitution, unique nuclei, clustering, mean-field approach, shell constitution, nuclear deformation, risky nuclei, and similar issues.

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Additional info for A New Era Of Nuclear Structure Physics: Proceedings Of The International Symposium, Kurokawa Village, Niigata, Japan 19 A» 22 November 2003

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Theor. Phys. 102, 203 (1999). 13. H. , Phys. Rev. Lett. 87, 212502 (2001). phys. tohoku. j p Reaction spectroscopy and y-ray spectroscopy of A hypernuclei has made significant progresses and has provided indispensable information on A hypernuclear structure and AN interaction in the recent years. In addition, the (e,e’K+) spectroscopy was, for the first time, successfully carried very recently. Based on these development, the future prospect of hypernuclear physics is discussed. Introduction Hypernuclear investigation provides valuable information in shedding lights on many-body system with a new degree of freedom “strangeness”.

Baryon structure in nuclear medium can be better studied by bringing a “strangeness” degree of freedom into deep inside a nucleus, since a A hyperon is free from Pauli exclusion principle. “+0 mblsr 0 % m 82 - pblsr Q) 2 i$ X nblsr 0 500 1000 Momentum transfer (MeV/c) Figure 1. Momentum transfer vs. hypernuclear production cross section for typical reactions. 35 36 Widths of excited A hypernuclear states are expected to be relatively narrow compared with normal nuclei at comparable excitation energies, because the AN interaction is weak.

T. Hasegawa, et. , Phys. Rev. C53 (1996) 1210. 3. T. Fukuda, et. , Nucl. Instr. Meth. A361,485 (1995) . 4. H. Hotchi et. , Phys. Rev. C64 044302 (2001). 5. H. Dalitz and A. Gal, Phys. Rev. Lett. 36 (1976) 362. 6. T. Motoba, H. Bando and K. Ikeda, Prog. Theor. Phys. 70,189 (1983). 7. T. Yamada, K. Ikeda, T. Motoba and H. Bando, Phys. Rev. C38 (1988) 854. 8. H. , Phys. Rev. Lett. 84,5963 (2000). 9. K. , Phys. Rev. Lett. 86, 1982 (2001). 10. T. , Phys. Rev. Lett. 90, 232502 (2003) 11. Jlab proposal E01-011(2001), Spokespersons 0.

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